Institute of Biophysics, Department of Bionanosciences, University of Natural Resources and Life Sciences Vienna (BOKU), 1190 Vienna, Austria.
Int J Mol Sci. 2023 Nov 13;24(22):16252. doi: 10.3390/ijms242216252.
This study explores the hysteresis phenomenon in DPPC (1,2-dipalmitoyl-sn-glycero-3-phosphocholine) monolayers, considering several variables, including temperature, compression and expansion rates, residence time, and subphase content. The investigation focuses on analyzing the influence of these variables on key indicators such as the π-A isotherm curve, loop area, and compression modulus. By employing the Langmuir-Blodgett technique, the findings reveal that all the examined factors significantly affect the aforementioned parameters. Notably, the hysteresis loop, representing dissipated energy, provides valuable insights into the monolayer's viscoelasticity, molecular packing, phase transition changes, and resistance during the isocycle process. These findings contribute to a comprehensive understanding of the structural and dynamic properties of DPPC monolayers, offering insights into their behavior under varying conditions. Moreover, the knowledge gained from this study can aid in the development of precise models and strategies for controlling and manipulating monolayer properties, with potential applications in drug delivery systems, surface coatings, as well as further investigation into air penetration into alveoli and the blinking mechanism.
本研究探讨了 DPPC(1,2-二棕榈酰-sn-甘油-3-磷酸胆碱)单层中的滞后现象,考虑了几个变量,包括温度、压缩和扩张速率、停留时间和亚相含量。研究重点分析了这些变量对关键指标的影响,如 π-A 等温线曲线、环面积和压缩模量。通过使用 Langmuir-Blodgett 技术,研究结果表明,所有检查的因素都显著影响了上述参数。值得注意的是,滞后环代表耗散能量,为单层的粘弹性、分子堆积、相变变化以及等循环过程中的阻力提供了有价值的见解。这些发现有助于全面了解 DPPC 单层的结构和动态特性,为在不同条件下的行为提供了深入的了解。此外,这项研究的知识可以帮助开发精确的模型和策略来控制和操纵单层性质,在药物输送系统、表面涂层以及进一步研究空气渗透到肺泡和闪烁机制方面具有潜在的应用。